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"published": "2025-05-04T12:49:42Z",
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"content": "<p><a href=\"https://mathstodon.xyz/tags/arXiv\" class=\"mention hashtag\" rel=\"tag\">#<span>arXiv</span></a> Can 1957 cold-fusion explain 1989 cold-fusion? <a href=\"https://arxiv.org/abs/2504.20057\" target=\"_blank\" rel=\"nofollow noopener noreferrer\" translate=\"no\"><span class=\"invisible\">https://</span><span class=\"\">arxiv.org/abs/2504.20057</span><span class=\"invisible\"></span></a> “on the hypothesis that 1989 cold fusion might have been randomly triggered by cosmic muons: an order-of-magnitude analysis shows that, under special conditions, a mW power per muon might be produced.<br />It is suggested that the muon-catalyzed deuterium-deuterium (dd) or deuterium-tritium (dt) fusion rate, experimentally observed in liquid deuterium, increases in a PdD crystal. The main reason is that, in the palladium crystal matrix, deuterium diffuses in ionic (d+), rather than molecular (D2), form, thereby favoring the rate of (dμd)+ formation.”<br /> cc <span class=\"h-card\" translate=\"no\"><a href=\"https://mathstodon.xyz/@Joaquin_Sevilla\" class=\"u-url mention\">@<span>Joaquin_Sevilla</span></a></span></p>",
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"es": "<p><a href=\"https://mathstodon.xyz/tags/arXiv\" class=\"mention hashtag\" rel=\"tag\">#<span>arXiv</span></a> Can 1957 cold-fusion explain 1989 cold-fusion? <a href=\"https://arxiv.org/abs/2504.20057\" target=\"_blank\" rel=\"nofollow noopener noreferrer\" translate=\"no\"><span class=\"invisible\">https://</span><span class=\"\">arxiv.org/abs/2504.20057</span><span class=\"invisible\"></span></a> “on the hypothesis that 1989 cold fusion might have been randomly triggered by cosmic muons: an order-of-magnitude analysis shows that, under special conditions, a mW power per muon might be produced.<br />It is suggested that the muon-catalyzed deuterium-deuterium (dd) or deuterium-tritium (dt) fusion rate, experimentally observed in liquid deuterium, increases in a PdD crystal. The main reason is that, in the palladium crystal matrix, deuterium diffuses in ionic (d+), rather than molecular (D2), form, thereby favoring the rate of (dμd)+ formation.”<br /> cc <span class=\"h-card\" translate=\"no\"><a href=\"https://mathstodon.xyz/@Joaquin_Sevilla\" class=\"u-url mention\">@<span>Joaquin_Sevilla</span></a></span></p>"
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